Literature DB >> 23364793

The near-iron transporter (NEAT) domains of the anthrax hemophore IsdX2 require a critical glutamine to extract heme from methemoglobin.

Erin S Honsa1, Cedric P Owens, Celia W Goulding, Anthony W Maresso.   

Abstract

Several gram-positive pathogenic bacteria employ near-iron transporter (NEAT) domains to acquire heme from hemoglobin during infection. However, the structural requirements and mechanism of action for NEAT-mediated heme extraction remains unknown. Bacillus anthracis exhibits a rapid growth rate during systemic infection, suggesting that the bacterium expresses efficient iron acquisition systems. To understand how B. anthracis acquires iron from heme sources, which account for 80% of mammalian iron stores, we investigated the properties of the five-NEAT domain hemophore IsdX2. Using a combination of bioinformatics and site-directed mutagenesis, we determined that the heme extraction properties of IsdX2 are dependent on an amino acid with an amide side chain within the 310-helix of the NEAT domain. Additionally, we used a spectroscopic analysis to show that IsdX2 NEAT domains only scavenge heme from methemoglobin (metHb) and that autoxidation of oxyhemoglobin to metHb must occur prior to extraction. We also report the crystal structures of NEAT5 wild type and a Q29T mutant and present surface plasmon resonance data that indicate that the loss of this amide side chain reduces the affinity of the NEAT domain for metHb. We propose a model whereby the amide side chain is first required to drive an interaction with metHb that destabilizes heme, which is subsequently extracted and coordinated in the aliphatic heme-binding environment of the NEAT domain. Because an amino acid with an amide side chain in this position is observed in NEAT domains of several genera of gram-positive pathogenic bacteria, these results suggest that specific targeting of this or nearby residues may be an entry point for inhibitor development aimed at blocking bacterial iron acquisition during infection.

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Year:  2013        PMID: 23364793      PMCID: PMC3605663          DOI: 10.1074/jbc.M112.430009

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  54 in total

1.  Structural basis for multimeric heme complexation through a specific protein-heme interaction: the case of the third neat domain of IsdH from Staphylococcus aureus.

Authors:  Masato Watanabe; Yoshikazu Tanaka; Ayuko Suenaga; Makoto Kuroda; Min Yao; Nobuhisa Watanabe; Fumio Arisaka; Toshiko Ohta; Isao Tanaka; Kouhei Tsumoto
Journal:  J Biol Chem       Date:  2008-07-30       Impact factor: 5.157

Review 2.  Mechanisms of iron import in anthrax.

Authors:  Erin Sarah Honsa; Anthony William Maresso
Journal:  Biometals       Date:  2011-01-22       Impact factor: 2.949

3.  Biphasic nature in the autoxidation reaction of human oxyhemoglobin.

Authors:  M Tsuruga; K Shikama
Journal:  Biochim Biophys Acta       Date:  1997-01-04

Review 4.  Bacterial iron sources: from siderophores to hemophores.

Authors:  Cécile Wandersman; Philippe Delepelaire
Journal:  Annu Rev Microbiol       Date:  2004       Impact factor: 15.500

5.  Characterization of Bacillus anthracis iron-regulated surface determinant (Isd) proteins containing NEAT domains.

Authors:  Orit Gat; Galia Zaide; Izhak Inbar; Haim Grosfeld; Theodor Chitlaru; Haim Levy; Avigdor Shafferman
Journal:  Mol Microbiol       Date:  2008-09-30       Impact factor: 3.501

6.  Demonstration of the iron-regulated surface determinant (Isd) heme transfer pathway in Staphylococcus aureus.

Authors:  Naomi Muryoi; Michael T Tiedemann; Mark Pluym; Johnson Cheung; David E Heinrichs; Martin J Stillman
Journal:  J Biol Chem       Date:  2008-08-01       Impact factor: 5.157

7.  Features and development of Coot.

Authors:  P Emsley; B Lohkamp; W G Scott; K Cowtan
Journal:  Acta Crystallogr D Biol Crystallogr       Date:  2010-03-24

8.  The IsdC protein from Staphylococcus aureus uses a flexible binding pocket to capture heme.

Authors:  Valerie A Villareal; Rosemarie M Pilpa; Scott A Robson; Evgeny A Fadeev; Robert T Clubb
Journal:  J Biol Chem       Date:  2008-08-20       Impact factor: 5.157

9.  Differential function of lip residues in the mechanism and biology of an anthrax hemophore.

Authors:  MarCia T Ekworomadu; Catherine B Poor; Cedric P Owens; Miriam A Balderas; Marian Fabian; John S Olson; Frank Murphy; Erol Bakkalbasi; Erol Balkabasi; Erin S Honsa; Chuan He; Celia W Goulding; Anthony W Maresso
Journal:  PLoS Pathog       Date:  2012-03-08       Impact factor: 6.823

10.  IlsA, a unique surface protein of Bacillus cereus required for iron acquisition from heme, hemoglobin and ferritin.

Authors:  Nadine Daou; Christophe Buisson; Michel Gohar; Jasmina Vidic; Hélène Bierne; Mireille Kallassy; Didier Lereclus; Christina Nielsen-LeRoux
Journal:  PLoS Pathog       Date:  2009-11-26       Impact factor: 6.823

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  16 in total

1.  Heme Binding by Corynebacterium diphtheriae HmuT: Function and Heme Environment.

Authors:  Elizabeth B Draganova; Neval Akbas; Seth A Adrian; Gudrun S Lukat-Rodgers; Daniel P Collins; John H Dawson; Courtni E Allen; Michael P Schmitt; Kenton R Rodgers; Dabney W Dixon
Journal:  Biochemistry       Date:  2015-10-26       Impact factor: 3.162

2.  NMR experiments redefine the hemoglobin binding properties of bacterial NEAr-iron Transporter domains.

Authors:  Ramsay Macdonald; Brendan J Mahoney; Ken Ellis-Guardiola; Anthony Maresso; Robert T Clubb
Journal:  Protein Sci       Date:  2019-07-03       Impact factor: 6.725

3.  IsdB-dependent hemoglobin binding is required for acquisition of heme by Staphylococcus aureus.

Authors:  Gleb Pishchany; Jessica R Sheldon; Claire F Dickson; Md Tauqeer Alam; Timothy D Read; David A Gell; David E Heinrichs; Eric P Skaar
Journal:  J Infect Dis       Date:  2013-12-13       Impact factor: 5.226

Review 4.  Heme Synthesis and Acquisition in Bacterial Pathogens.

Authors:  Jacob E Choby; Eric P Skaar
Journal:  J Mol Biol       Date:  2016-03-24       Impact factor: 5.469

5.  Progress toward the Development of a NEAT Protein Vaccine for Anthrax Disease.

Authors:  Miriam A Balderas; Chinh T Q Nguyen; Austen Terwilliger; Wendy A Keitel; Angelina Iniguez; Rodrigo Torres; Frederico Palacios; Celia W Goulding; Anthony W Maresso
Journal:  Infect Immun       Date:  2016-11-18       Impact factor: 3.441

Review 6.  Heme uptake in bacterial pathogens.

Authors:  Heidi Contreras; Nicholas Chim; Alfredo Credali; Celia W Goulding
Journal:  Curr Opin Chem Biol       Date:  2014-01-04       Impact factor: 8.822

7.  Expression, immunogenicity and variation of iron-regulated surface protein A from bovine isolates of Staphylococcus aureus.

Authors:  Neha Misra; Tyler F Wines; Colton L Knopp; Mark A McGuire; Juliette K Tinker
Journal:  FEMS Microbiol Lett       Date:  2017-05-01       Impact factor: 2.742

8.  Spectroscopic evidence for a 5-coordinate oxygenic ligated high spin ferric heme moiety in the Neisseria meningitidis hemoglobin binding receptor.

Authors:  David Z Mokry; Angela Nadia-Albete; Michael K Johnson; Gudrun S Lukat-Rodgers; Kenton R Rodgers; William N Lanzilotta
Journal:  Biochim Biophys Acta       Date:  2014-06-23

9.  Novel mechanism of hemin capture by Hbp2, the hemoglobin-binding hemophore from Listeria monocytogenes.

Authors:  G Reza Malmirchegini; Megan Sjodt; Sergey Shnitkind; Michael R Sawaya; Justin Rosinski; Salete M Newton; Phillip E Klebba; Robert T Clubb
Journal:  J Biol Chem       Date:  2014-10-14       Impact factor: 5.157

10.  Structure of the hemoglobin-IsdH complex reveals the molecular basis of iron capture by Staphylococcus aureus.

Authors:  Claire F Dickson; Kaavya Krishna Kumar; David A Jacques; G Reza Malmirchegini; Thomas Spirig; Joel P Mackay; Robert T Clubb; J Mitchell Guss; David A Gell
Journal:  J Biol Chem       Date:  2014-01-14       Impact factor: 5.157

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